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61.
在TritonX-100表面活性剂存在下,研究了1-(6-硝基-2-苯并噻唑)-3-(4-硝基苯)-三氮烯(NBTNPT)与镍的显色反应.在pH为10.0~11.5的Na2B4O7-NaOH缓冲溶液中,该试剂与镍生成2∶1配合物.以500nm为参比波长,440nm为测定波长的双峰双波长进行测定,表观摩尔吸光系数为1.84×105L·mol-1·cm-1.Ni2+的浓度在0~280μg/L内符合比耳定律.用拟定方法测定钢铁中的微量镍,结果满意. 相似文献
62.
《科学通报(英文版)》2008,(11)
Based on density functional theory (DFT) of the first-principle for the cathode materials of lithium ion battery, the electronic structures of Li(Fe1-xMex)PO4 (Me = Ag/Mn, x = 0―0.40) are calculated by plane wave pseudo-potential method using Cambridge serial total energy package (CASTEP) program. The calculated results show that the Fermi level of mixed atoms Fe1-xAgx moves into its conduction bands (CBs) due to the Ag doping. The Li(Fe1-xAgx)PO4 system displays the periodic direct semiconductor characteristic with the increase of Ag-doped concentration. However, for Fe1-xMnx mixed atoms, the Fermi level is pined at the bottom of conduction bands (CBs), which is ascribed to the interaction be-tween Mn(3d) electrons and Fe(4s) electrons. The intensity of the partial density of states (PDOS) near the bottom of CBs becomes stronger with the increase of Mn-doped concentration. The Fermi energy of the Li(Fe1-xMnx)PO4 reaches maximum at x = 0.25, which is consistent with the experimental value of x = 0.20. The whole conduction property of Mn-doped LiFePO4 is superior to that of Ag-doped LiFePO4 cathode material, but the structural stability is reverse. 相似文献
63.
《科学通报(英文版)》2008,(9)
The optimizations geometries and interaction energy corrected by BSSE of the complexes between C4H4Y (Y=O, S) and CH3Li have been calculated at the B3LYP/6-311 G** and MP2/6-311 G** levels. Three complexes were obtained. Abnormally, the calculations showed that all the C10—Li14 bond lengths increased obviously but the blue-shift of C10—Li14 stretching frequency occurred after formed complexes. The calculated binding energy with basis set super-position error (BSSE) and zero-point vibrational energy corrections of complexes I―III is ?45.757, ?35.700 and ?39.107 kJ·mol?1, respectively. The analyses on the combining interaction with the atom-in-molecules theory (AIM) also showed that a relatively strong lithium bond interaction presented in furan homologues C4H4Y---LiCH3 systems. Natural bond orbital theory (NBO) analysis has been performed, and the results revealed that the com- plex I is formed with n-σ type lithium bond interaction between C4H4O and LiCH3, complex II is formed with π-s type lithium bond interaction between C4H4O and LiCH3, and complex III is formed with π-s and n-s type lithium bond interactions between C4H4S and LiCH3, respectively. 相似文献
64.
10-对硝基苯氧基癸酸合成工艺的改进 总被引:1,自引:0,他引:1
对10-对硝基苯氧基癸酸合成工艺进行了改进.以10-溴代癸酸为原料,与甲醇反应生成10-溴代癸酸甲酯,再与对硝基酚钠反应生成10-对硝基苯氧基癸酸甲酯,最后以固定化脂肪酶水解得到10-对硝基苯氧基癸酸.对中间体的折光率和紫外-可见光谱进行分析,并通过紫外-可见光谱1、H-NMR和13C-NMR以及酶分析应用对最终产物进行确证.结果表明,成功合成出目标化合物,总收率达到71.6%. 相似文献
65.
采用射频溅射技术沉积Cu/Sn/Zn金属前驱体叠层结合硫化技术在玻璃衬底上成功制备了Cu2ZnSnS4薄膜。X-射线衍射分析表明,通过优化制备条件可以获得单一黝锡矿结构且具有(221)择优取向的Cu2ZnSnS4薄膜。霍尔效应和紫外可见透过谱测量表明,样品的薄膜电阻、吸收系数和光学带隙分别达到0.073Ω·cm,10^4cm^-1和1.53eV,具有适合作为薄膜太阳电池吸收层应用的可能性。 相似文献
66.
《科学通报(英文版)》2007,(16)
The photoluminescence quenching behaviors of 5D3-7FJ and 5D4-7FJ (J = 0―6) transitions of Tb3 in YBO3:Tb under 130―290 nm excitation were systematically investigated. The results revealed that the quenching concentrations of both 5D3-7FJ and 5D4-7FJ transitions of Tb3 in YBO3:Tb were mainly de-pendent on excitation wavelength. Particularly,the quenching concentrations of 5D4-7FJ transitions of Tb3 under 130―290 nm excitation were correlated with excitation bands of YBO3:Tb. The quenching concentrations of 5D3-7FJ transitions remained at low concentration (2%) under 186―290 nm excitation and then increased gradually with energy of incoming excitation photon when excited at 130―186 nm. This dependence should be involved in their excitation mechanisms and quenching pathway in particular excitation region. 相似文献
67.
研究了用水合硫酸铁替代硫酸作催化剂,催化丙烯酸与多种醇的酯化反应,发现其具有良好的催化活性.探讨了醇的结构对催化剂和酯化反应的影响,以及催化酯化反应的可能机理 相似文献
68.
本文用小角x射线射法法对硒化蓖麻酸多相脂质体的抗癌作用从结构和功能上进行了研究。 相似文献
69.
固体超强酸作甲酸甲酯水解转化率和对甲酸的催化剂、进料速度、反应温度对甲酸甲酯水解转化率和对甲酸出口浓度的影响,当原料水与酯的摩尔比为1、反应温度100℃、原料与催化剂的接触时间为16min时,甲酸甲酯的转化率为24.6%(甲酸的出口浓度达14.5%)。 相似文献
70.